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Improvement of Traction Motor Performance for Electric Vehicles Using Conductors With Insulation of High Thermal Conductivity Considering Cooling Methods

机译:考虑冷却方法的高导热率绝缘电动车辆牵引电动机性能的提高

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摘要

This article utilizes conductors with insulation of high thermal conductivity (ThC) combining suitable cooling methods to enhance the performance of traction motors for electric vehicles. The performance of a 10 kW interior permanent magnet (IPM) motor without forced cooling is considered as a benchmark. Then, the conductors with two conventional insulation materials and two with high ThC are applied to the IPM motor windings. Two cooling methods, finned housing (no forced cooling) and water cooling, are considered here. It is found that using conductors with high ThC insulation without forced cooling can only cool the windings by several degrees; however, the temperature can be considerably reduced by combining water cooling with an appropriate flow rate. The torque and power output of the IPM motor can also be significantly improved. This indicates that forced cooling can further enhance the effectiveness of conductors with insulation of high ThC. Two induction motors using conductors with two different insulation materials (0.1 and 3 W/ $ext{m}cdot ext{K}$ ) are tested. The experimental results validate the analysis.
机译:本文利用导体具有高导热率(THC)的绝缘性结合合适的冷却方法来增强电动车辆牵引电动机的性能。 10 kW内部永磁体(IPM)电动机的性能被认为是基准。然后,将具有两个传统绝缘材料和具有高THC的两个具有两个具有高音的导体对IPM电动机绕组。这里考虑了两种冷却方法,翅片外壳(无强制冷却)和水冷,在此考虑。结果发现,在没有强制冷却的情况下使用具有高THC绝缘的导体只能将绕组冷却几度;然而,通过以适当的流速组合水冷,可以显着降低温度。 IPM电机的扭矩和功率输出也可以显着提高。这表明强制冷却可以进一步提高导体具有高THC绝缘的效果。两个使用导线的感应电动机,具有两个不同的绝缘材料(0.1和3 W / <内联XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http:// www.w3.org/1999/xlink“> $ text {m} cdot text {k} $ )被测试。实验结果验证了分析。

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